Pesticides newly introduced into the soil are normally poorly degraded by native soil microbes. However, studies have demonstrated that repeated exposure of pesticides to soil microbes potentially enhances their biodegradation through selective enrichment of pesticide-metabolising microorganisms, particularly when the compound is used as a carbon (C) or nitrogen (N) and energy source. Enhanced degradation of recalcitrant compounds in soil has a significant environmental impact, as the chemicals are less likely to contaminate environmental ecosystems. The authors have undertaken several studies to isolate these adapted microbes that rapidly degrade chemicals hitherto known to be recalcitrant in soil. These microbes could potentially be used for bioremediation (bioaugmentation). In addition, other studies have shown their potential to remove pesticide contamination from the environment by the use of organic materials locally generated as organic amendments (biostimulation). In this review, the various methods used in the course of the authors’ studies in determining the utilisation of selected chemicals (pesticides) by adapted microbes as a source of carbon and nitrogen for growth and energy are discussed. This review also presents some of the compounds that the authors have worked with and the successes registered in isolating key degraders of the respective pesticides and the extent to which the locally generated organic materials are able to enhance the degradation of the respective chemicals in soil.
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January 2024
Research Article|
May 06 2023
A review of the enhanced degradation of pesticides in tropical agricultural soils
Zachary M Getenga;
Department of Physical Sciences, Machakos University, Machakos, Kenya
(corresponding author: zachay.getenga@mksu.ac.ke)
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Emmanuel O Mogusu;
Emmanuel O Mogusu
Lecturer and Head
Department of Agriculture, Earth and Environmental Sciences, Mwenge Catholic University, Kilimanjaro-Moshi, Tanzania
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A N Ngige;
A N Ngige
Senior Lecturer
Department of Physical Sciences, Multimedia University of Kenya, Nairobi, Kenya
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S Jemutai Kimosop;
S Jemutai Kimosop
Lecturer
Department of Physical Sciences, Masinde Muliro University of Science and Technology, Kakamega, Kenya
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G K Mutua;
G K Mutua
Lecturer
Department of Physical Sciences, Masinde Muliro University of Science and Technology, Kakamega, Kenya
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Fredrick Kengara;
Fredrick Kengara
Associate Professor
Department of Physical Sciences, Bomet University College, Bomet, Kenya
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S Reiner;
S Reiner
Head of Soil Ecology
Department of Environmental Sciences, Helmholtz Zentrum Muenchen – German Research Center for Environmental Health, Neuherberg, Germany
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D Ulrike
D Ulrike
Senior Researcher
Department of Environmental Sciences, Helmholtz Zentrum Muenchen – German Research Center for Environmental Health, Neuherberg, Germany
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(corresponding author: zachay.getenga@mksu.ac.ke)
Publisher: Emerald Publishing
Received:
December 19 2022
Accepted:
April 18 2023
Online ISSN: 1496-256X
Print ISSN: 1496-2551
Emerald Publishing Limited: All rights reserved
2024
Journal of Environmental Engineering and Science (2024) 19 (1): 9–17.
Article history
Received:
December 19 2022
Accepted:
April 18 2023
Citation
Getenga ZM, Mogusu EO, Ngige AN, Kimosop SJ, Mutua GK, Kengara F, Reiner S, Ulrike D (2024), "A review of the enhanced degradation of pesticides in tropical agricultural soils". Journal of Environmental Engineering and Science, Vol. 19 No. 1 pp. 9–17, doi: https://doi.org/10.1680/jenes.22.00096
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